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Laser-based three-dimensional high strain rate nanoforming techniques

机译:基于激光的三维高应变率纳米成形技术

摘要

A laser nanoforming system and method for forming three-dimensional nanostructures from a metallic surface. A laser beam is directed to hit and explode an ablative layer to generate a shockwave that exerts a force on the metallic surface to form an inverse nanostructure of an underlying mold. A dry lubricant can be located between the metallic surface and mold to reduce friction. A confinement layer substantially transparent to the laser beam can confine the shockwave. A cushion layer can protect the mold from damage. A flyer layer between the ablative layer and metallic surface can protect the metallic surface from thermal effects of the exploding ablative layer. The mold can have feature sizes less than 500 nm. The metallic surface can be aluminum film. The dry lubricant can be sputtered Au—Cr film, evaporated Au film or a dip-coated PVP film or other dry lubricant materials.
机译:用于从金属表面形成三维纳米结构的激光纳米成形系统和方法。引导激光束撞击并爆炸烧蚀层以产生冲击波,该冲击波在金属表面上施加力以形成下层模具的反向纳米结构。可以在金属表面和模具之间放置干润滑剂以减少摩擦。对激光束基本上透明的限制层可以限制冲击波。缓冲层可以保护模具不受损坏。烧蚀层和金属表面之间的飞边层可以保护金属表面免受爆炸烧蚀层的热影响。模具的特征尺寸可以小于500 nm。金属表面可以是铝膜。干润滑剂可以是溅射的Au-Cr膜,蒸发的Au膜或浸涂的PVP膜或其他干润滑剂材料。

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